Jackson J C, Lopes J M
Department of Molecular and Cellular Biochemistry, Loyola University of Chicago, Maywood, IL 60153, USA.
Nucleic Acids Res. 1996 Apr 1;24(7):1322-9. doi: 10.1093/nar/24.7.1322.
In Saccharomyces cerevisiae, regulation of the phospholipid biosynthetic genes, INO1, CHO1, CHO2 and OPI3, is known to occur at the level of transcript abundance. Derepression in response to inositol deprivation requires the INO2 and INO4 regulatory genes. Repression in response to inositol supplementation requires the OPI1 regulatory gene. Here, we examined the role of the UME6 global negative regulatory gene in expression of the phospholipid biosynthetic genes. These studies were stimulated by the finding that the INO1 promoter included a UME6 cognate cis-acting regulatory sequence (URS1). We found that the UME6 negative regulatory gene was involved in regulation of phospholipid biosynthetic gene expression through two distinct regulatory pathways. One pathway was the direct repression of INO1 expression through the URS1 element. Surprisingly, the UME6 gene was also required for derepression of CHO1, CHO2 and OPI3 gene expression. Consistent with this observation, the UME6 gene was required for wild-type levels of expression of the INO2 positive regulatory gene. Therefore, the UME6 gene has both a negative and a positive role in regulating phospholipid biosynthesis.
在酿酒酵母中,磷脂生物合成基因INO1、CHO1、CHO2和OPI3的调控已知发生在转录本丰度水平。对肌醇缺乏的去阻遏需要INO2和INO4调控基因。对肌醇补充的阻遏需要OPI1调控基因。在此,我们研究了UME6全局负调控基因在磷脂生物合成基因表达中的作用。这些研究受到以下发现的启发:INO1启动子包含一个UME6同源顺式作用调控序列(URS1)。我们发现UME6负调控基因通过两种不同的调控途径参与磷脂生物合成基因表达的调控。一种途径是通过URS1元件直接抑制INO1表达。令人惊讶的是,CHO1、CHO2和OPI3基因表达的去阻遏也需要UME6基因。与这一观察结果一致,INO2正调控基因的野生型表达水平也需要UME6基因。因此,UME6基因在调节磷脂生物合成中具有负向和正向作用。